• Title/Summary/Keyword: GIS(Gas Insulated Switch-gear)

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A Study on a Intelligent GIS Monitoring System using the Preventive Diagnostic Technology (예방진단기술을 이용한 지능형 GIS 감시시스템에 관한 연구)

  • Park, Kee-Young;Lee, Jong-Ha;Cho, Sook-Jin;Choi, Hyung-Ki;Jung, Eui-Bung
    • Journal of the Institute of Electronics and Information Engineers
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    • v.51 no.6
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    • pp.244-251
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    • 2014
  • In this study, we give a detailed account of normal and abnormal state of GIS(Gas Insulated Switch-gear) using the preventive diagnostic technology. And it is based on the analysis and diagnosis for storing data of GIS by intelligent GIS monitoring system. The wave shape of GIS sound is similar to noise and is systematically generated by discharge and its corona sound. Therefore, in this paper, to classify normal and abnormal GIS sound. We could discriminate between normal and abnormal case using level crossing rate(LCR) and spectrogram energy rate.

Measurement of UHF noise penetration into the barrier and bushing of the open barrier type gas-insulated switch gear(GIS) (개방형 스페이서를 가진 가스절연개폐장치(GIS)의 극초단파대 외부잡음 유입 측정)

  • Park, Ki-Jun;Lim, Jae-Sup;Goo, Sun-Geun;Yoon, Jin-Yul
    • Proceedings of the KIEE Conference
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    • 2003.07c
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    • pp.1618-1619
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    • 2003
  • 개방형 스페이서(barrier)가 적용된 가스 절연개폐장치(GIS)에 외장형 부분방전(PD) 센서를 적용 하고 센서장착부, 인근 스페이서 또는 부싱으로 유입되는 광대역 잡음신호의 투과율을 10 - 2000 MHz의 극초단파 영역에서 측정하였다. 또한 간단한 금속 차폐체에 의한 잡음신호의 감쇄효과도 측정 하였다. 스페이서 또는 부싱을 통하여 인근센서에 유입되는 잡음의 크기는 차폐시와 대비하여 약 25 dB 증가하였다.

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Analysis of internal-type ultra-high frequency partial discharge sensor for gas-insulated switch gear (GIS) using 3-D electromagnetic simulator (3차원 전자기장 모사를 이용한 가스절연개폐장치(GIS) 내장형 극초단파 부분방전 센서의 특성 평가)

  • Park, Ki-Jun;Goo, Sun-Geun;Yoon, Jin-Yul;Lee, Young-Sang;Choi, Gil-Soo
    • Proceedings of the KIEE Conference
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    • 2003.07c
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    • pp.1843-1844
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    • 2003
  • 154 kV급 가스절연개폐장치(GIS)용dp 장착할 수 있는 내장형 극초단파 (UHF) 부분방전(PD) 센서의 고주파 특성을 전산모사 하였다. UHF PD 센서는 일종의 광대역 안테나이므로 3차원 전자기장 해석도구를 활용하여 주파수 또는 시간 영역에서 고주파특성을 해석하였다. 센서의 구조를 결정하는 센서장착용 구멍과 센서의 크기를 변수로 조절하면서 내장형 UHF PD 센서의 특성을 해석 하였다. 센서가 장착되는 구멍의 크기와 센서의 구조변화에 따라 반사손실이 변화하였으며 GIS의 전파 mode의 영향을 받는다.

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Domestic Efforts for SFCL Application and Hybrid SFCL (국내 초전도 한류기 요구와 하이브리드 초전도 한류기)

  • Hyun, O.B.;Kim, H.R.;Yim, Y.S.;Sim, J.;Park, K.B.;Oh, I.S.
    • Progress in Superconductivity
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    • v.10 no.1
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    • pp.60-67
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    • 2008
  • We present domestic efforts for superconducting fault current limiter (SFCL) application in the Korea Electric Power Corporation (KEPCO) grid and pending points at issue. KEPCO's decision to upgrade the 154 kV/22.9 kV main transformer from 60 MVA to 100 MVA cast a problem of high fault current in the 22.9 kV distribution lines. The grid planners supported adopting an SFCL to control the fault current. This environment friendly to SFCL application must be highly dependent upon the successful development of SFCL having specifications that domestic utility required. The required conditions are (1) small size of not greater than twice of 22.9 kV gas insulated switch-gear (GIS), (2) sustainability of current limitation without the line breaking by circuit breakers (CB) for maximum 1.5 seconds. Also, optionally, recommended is (3) the reclosing capability. Conventional resistive SFCLs do not meet (1) $\sim$ (3) all together. A hybrid SFCL is an excellent solution to meet the conditions. The hybrid SFCL consists of HTS SFCL components for fault detection and line commutation, a fast switch (FS) to break the primary path, and a limiter. This characteristic structure not only enables excellent current limiting performances and the reclosing capability, but also allows drastic reduction of HTS volume and small size of the cryostat, resulting in economic feasibility and compactness of the equipment. External current limiter also enables long term limitation since it is far less sensitive to heat generation than HTS. Semi-active operation is another advantage of the hybrid structure. We will discuss more pending points at issues such as maintenance-free long term operation, small size to accommodate the in-house substation, passive and active control, back-up plans, diagnosis, and so on.

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